R60. MKT Series R 6 0 -
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1 Loose Taped Fig.1 Fig. 2 R60 Typical applications: blocking, coupling, decoupling, by-passing, interference suppression in low voltage applications (i.e.: AUTOMOTIVE). Ød ±0.05 Product code system The part number, comprising 14 digits, is formed as follows: R Digit 1 to 3 Series code. Digit 4 d.c. rated voltage: C = 50V D = 63V E = 100V G = 160V I = 250V M = 400V P = 630V Q = 1000V Digit 5 Pitch: F=10mm; I=15mm; N=22.5mm; R=27.5mm; W=37.5mm Digit 6 to 9 Digits indicate the first three digits of Capacitance value and the 6th digit indicates the number of zeros that must be added to obtain the Capacitance in pf. Digit 10 to 11 Mechanical version and/or packaging (table1) Digit 12 Identifies the dimensions and electrical characteristics. Digit 13 Digit 14 Capacitance tolerance: J=5%; K=10%; M=20%. Table 1 (for more detailed information, please refer to page 14) Standard packaging style Lead length Taping style Ordering code P 2 Fig. Pitch (Digit 10 to 11) (mm) (mm) (No.) (mm) AMMO-PACK /15.0 DQ AMMO-PACK DQ REEL Ø 355mm /15.0 GY REEL Ø 500mm /15.0 CK REEL Ø 500mm /27.5 CK Loose, short leads 4 +2 AA Loose, long leads (p<10mm) Loose, long leads (p 15mm) p = 10 p > 10 p = /-2 Z /-1 50 Note: Ammo-pack is the preferred packaging for taped version. Note: Special version, in compliance with DIN is available upon request. Construction: STACKED technology for pitch 10mm ( Voltage from 50 to 630Vdc) WOUND technology from pitch 10 to 27.5mm ( Voltage from 63 to 1000Vdc) Pitch Box thickness (B) imum dimensions (mm) (mm) (mm) B max H max L max 10.0 All B +0.2 H +0.1 L <7.5 B +0.2 H +0.1 L B +0.2 H +0.1 L All B +0.2 H +0.1 L All B +0.2 H +0.1 L All B +0.3 H +0.1 L +0.3 GENERAL TECHNICAL DAta Dielectric: polyester film (polyethylene terephthalate). Plates: aluminium layer deposited by evaporation under vacuum. Winding: non-inductive type. Leads: tinned wire. Protection: plastic case, thermosetting resin filled. Box material is solvent resistant and flame retardant according to UL94. Marking: Manufacturer s logo (if requested), capacitance, tolerance, D.C. rated voltage. Climatic category: 55/105/56 IEC Operating temperature range: -55 to +105 C Upper operating temperature of +125 C is allow ed for a max.operating time of 1000h. Related documents: IEC Winding scheme single sided metallized polyester film 41 09/2008
2 STACKED VERSION 50Vdc/30Vac 1.5 µf E3 R60CF µf E3 R60CF µf E3 R60CF µf E3 R60CF µf E3 R60CF Vdc/40Vac 1.0 µf E3 R60DF µf E3 R60DF µf E3 R60DF µf E3 R60DF Vdc/63Vac 0.33 µf E3 R60EF µf E3 R60EF µf E3 R60EF µf E3 R60EF µf E3 R60EF Vdc/90Vac 0.22 µf E3 R60GF µf E3 R60GF µf E3 R60GF µf E3 R60GF Vdc/160Vac 0.10 µf E3 R60IF µf E3 R60IF µf E3 R60IF µf E3 R60IF µf E3 R60IF Vdc/200Vac µf E3 R60ΜF µf E3 R60ΜF µf E3 R60ΜF µf E3 R60ΜF µf E3 R60ΜF Vdc/220Vac µf E3 R60PF µf E3 R60PF µf E3 R60PF µf E3 R60PF µf E3 R60PF Note: If the working voltage (V) is lower than the rated voltage (V R ), the capacitor may work at higher. In this case the maximum value allowed is obtained multiplying the above value (see table ) with the ratio V R /V. The pulse characteristic K 0 depends on the voltage wave-form and in any case it cannot overcome the value given in the above table. *Not suitable for across-the-line applications. Please refer to Interference Suppression Capacitors (page 145). 09/
3 63Vdc/40Vac 0.68 µf E3 R60DI µf E3 R60DI µf E3 R60DI µf E3 R60DI µf E3 R60DI µf E3 R60DI L µf E3 R60DI µf E3 R60DI L µf E3 R60DI µf E3 R60DN µf E3 R60DN µf E3 R60DN µf E3 R60DN µf E3 R60DN µf E3 R60DR µf E3 R60DR µf E3 R60DR µf E3 R60DR µf E3 R60DR µf E3 R60DR µf E3 R60DR µf E3 R60DW µf E3 R60DW µf E3 R60DW µf E3 R60DW µf E3 R60DW µf E3 R60DW µf E3 R60DW Vdc/63Vac 0.33 µf E3 R60EI µf E3 R60EI µf E3 R60EI µf E3 R60EI µf E3 R60EI µf E3 R60EI µf E3 R60EI L µf E3 R60EI µf E3 R60EI L µf E3 R60EI µf E3 R60EN µf E3 R60EN µf E3 R60EN µf E3 R60EN µf E3 R60EN µf E3 R60EN µf E3 R60ER µf E3 R60ER µf E3 R60ER µf E3 R60ER µf E3 R60ER µf E3 R60ER µf E3 R60ER µf E3 R60ER µf E3 R60EW µf E3 R60EW µf E3 R60EW µf E3 R60EW µf E3 R60EW µf E3 R60EW µf E3 R60EW R60 WOUND VERSION 160Vdc/90Vac 0.33 µf E3 R60GI µf E3 R60GI µf E3 R60GI µf E3 R60GI µf E3 R60GI µf E3 R60GI L µf E3 R60GI µf E3 R60GI L µf E3 R60GI µf E3 R60GN µf E3 R60GN µf E3 R60GN µf E3 R60GN µf E3 R60GN µf E3 R60GR µf E3 R60GR µf E3 R60GR µf E3 R60GR µf E3 R60GR µf E3 R60GR µf E3 R60GR µf E3 R60GR µf E3 R60GR µf E3 R60GW µf E3 R60GW µf E3 R60GW µf E3 R60GW µf E3 R60GW µf E3 R60GW µf E3 R60GW µf E3 R60GW Vdc/160Vac 0.10 µf E3 R60II µf E3 R60II µf E3 R60II µf E3 R60II µf E3 R60II µf E3 R60II µf E3 R60II L µf E3 R60II µf E3 R60II L µf E3 R60II µf E3 R60IN µf E3 R60IN µf E3 R60IN µf E3 R60IN µf E3 R60IN µf E3 R60IN µf E3 R60IR µf E3 R60IR µf E3 R60IR µf E3 R60IR µf E3 R60IR µf E3 R60IR µf E3 R60IR µf E3 R60IR µf E3 R60IR µf E3 R60IW µf E3 R60IW µf E3 R60IW µf E3 R60IW µf E3 R60IW µf E3 R60IW µf E3 R60IW µf E3 R60IW Note: If the working voltage (V) is lower than the rated voltage (V R ), the capacitor may work at higher. In this case the maximum value allowed is obtained multiplying the above value (see table ) with the ratio V R /V. The pulse characteristic K 0 depends on the voltage wave-form and in any case it cannot overcome the value given in the above table. 09/2008
4 WOUND VERSION 400Vdc/200Vac µf E3 R60MF µf E3 R60MF µf E3 R60MF µf E3 R60MF µf E3 R60MF µf E3 R60MF µf E3 R60MF µf E3 R60MF µf E3 R60MF µf E3 R60MI µf E3 R60MI µf E3 R60MI µf E3 R60MI µf E3 R60MI µf E3 R60MI µf E3 R60MI µf E3 R60MI µf E3 R60MI L µf E3 R60MI µf E3 R60MI µf E3 R60MI L µf E3 R60MI L µf E3 R60MI µf E3 R60MI µf E3 R60MI L µf E3 R60MI µf E3 R60MN µf E3 R60MN µf E3 R60MN µf E3 R60MN µf E3 R60MN µf E3 R60MN µf E3 R60MN µf E3 R60MN µf E3 R60MN µf E3 R60MN µf E3 R60MR µf E3 R60MR µf E3 R60MR µf E3 R60MR µf E3 R60MR µf E3 R60MR µf E3 R60MR µf E3 R60MR µf E3 R60MW µf E3 R60MW µf E3 R60MW µf E3 R60MW µf E3 R60MW µf E3 R60MW µf E3 R60MW Vdc/220*Vac 4700 pf E3 R60PF pf E3 R60PF µf E3 R60PF µf E3 R60PF µf E3 R60PF µf E3 R60PF µf E3 R60PF µf E3 R60PF µf E3 R60PF µf E3 R60PI µf E3 R60PI µf E3 R60PI µf E3 R60PI µf E3 R60PI µf E3 R60PI µf E3 R60PI L µf E3 R60PI µf E3 R60PI µf E3 R60PI µf E3 R60PI µf E3 R60PI µf E3 R60PN µf E3 R60PN µf E3 R60PN µf E3 R60PN µf E3 R60PN µf E3 R60PN µf E3 R60PN µf E3 R60PN µf E3 R60PN µf E3 R60PN µf E3 R60PN µf E3 R60PR µf E3 R60PR µf E3 R60PR µf E3 R60PR µf E3 R60PR µf E3 R60PR µf E3 R60PR µf E3 R60PR µf E3 R60PW µf E3 R60PW µf E3 R60PW µf E3 R60PW µf E3 R60PW µf E3 R60PW µf E3 R60PW Note: If the working voltage (V) is lower than the rated voltage (V R ), the capacitor may work at higher. In this case the maximum value allowed is obtained multiplying the above value (see table ) with the ratio V R /V. The pulse characteristic K 0 depends on the voltage wave-form and in any case it cannot overcome the value given in the above table. * Not suitable for across-the-line applications. Please refer to Interference Suppression Capacitors (page 145). 09/
5 WOUND VERSION 1000Vdc/250Vac* 1000 pf E3 R60QF pf E3 R60QF pf E3 R60QF pf E3 R60QF pf E3 R60QF pf E3 R60QF µf E3 R60QI µf E3 R60QI µF E3 R60QI µf E3 R60QI µf E3 R60QI L µf E3 R60QI µf E3 R60QI L µf E3 R60QI µf E3 R60QN µf E3 R60QN µf E3 R60QN µf E3 R60QN µf E3 R60QN µf E3 R60QR µf E3 R60QR µf E3 R60QR µf E3 R60QR µf E3 R60QR µf E3 R60QR µf E3 R60QR µf E3 R60QW µf E3 R60QW µf E3 R60QW µf E3 R60QW µf E3 R60QW µf E3 R60QW µf E3 R60QW Note 1: If the working voltage (V) is lower than the rated voltage (V R ), the capacitor may work at higher. In this case the maximum value allowed is obtained multiplying the above value (see table ) with the ratio V R /V. The pulse characteristic K 0 depends on the voltage wave-form and in any case it cannot overcome the value given in the above table. Note 2: voltages higher than 1000Vdc are available upon request. * Not suitable for across-the-line applications. Please refer to Interference Suppression Capacitors (page 151) /2008
6 electrical characteristics voltage (V R ): 050Vdc - 63Vdc -100Vdc - 160Vdc - 250Vdc - 400Vdc - 630Vdc-1000Vdc. temperature (T R ): +85 C Temperature derated voltage: for temperatures between +85 C and +125 C a decreasing factor of 1.25% per degree C on the rated voltage V R (d.c. and a.c.) has to be applied. Capacitance range: 1000pF to 220µF Capacitance values: E6 series (IEC Norm). Capacitance tolerances (measured at 1 khz): ±5% (J); ±10% (K); ±20% (M). Total self-inductance (L): (lead length ~2mm) Pitch (mm) L(nH) Dissipation factor (DF): tgδ 10-4 at +25 C ±5 C khz C 1µF C>1µF Insulation resistance: Test conditions Temperature: +25 C±5 C Voltage charge time: 1 min Voltage charge: 50 Vdc for V R <100 Vdc 100 Vdc for V R 100 Vdc For V R 100 Vdc 3750 MΩ for C 0.33µF (50000 MΩ)* 1250 s for C >0.33µF (5000 s)* For V R >100 Vdc MΩ for C 0.33µF (50000 MΩ)* s for C >0.33µF (17000 s)* *Typical value Test voltage between terminations: 1.6xV R applied for 2 s at +25 C±5 C R60 test method and performance Damp heat, steady state: Test conditions Temperature: +40 C±2 C Relative humidity (RH): 93% ±2% Test duration: 56 days Capacitance change C/C : 5% DF change ( tgδ): 50x10-4 at 1kHz Insulation resistance: 50% of initial limit. Endurance: Test conditions Temperature: +105 C±2 C Test duration: 2000 h Voltage applied: 1.25xV C Capacitance change C/C : 5% DF change ( tgδ): 50x10-4 at 10kHz for C 1µF 30x10-4 at 01kHz for C>1µF Insulation resistance: 50% of initial limit. Resistance to soldering heat: Test conditions Solder bath temperature: +260 C±5 C Dipping time (with heat screen):10 s ±1 s Capacitance change C/C : 2% DF change ( tgδ): 50x10-4 at 10kHz for C 1µF 30x10-4 at 01kHz for C>1µF Insulation resistance: initial limit. Long term stability (after two years): Storage: standard environmental conditions (see page 12). Capacitance change C/C : 3% for C 0.1µF 2% for C >0.1µF Reliability: Reference MIL HDB 217 Application conditions: Temperature: +40 C±2 C Voltage: 0.5xV R Failure rate: 5 FIT (1 FIT = 1x10-9 failures/componentsxh) Failure criteria: Short or open circuit Capacitance change C/C : >10% DF change ( tgδ): >2xinitial limit. Insulation resistance: <0.005xinitial limit. 09/
7 MAX. VOLTAGE (Vr.m.s.) VERSUS FREQUENCY (sinusoidal wave-form / Th 40 C) Note: p (pitch) in mm /2008
8 MAX. CURRENT (Ir.m.s.) VERSUS FREQUENCY (sinusoidal wave-form / Th 40 C) Note: p (pitch) in mm. Statements of suitability for certain applications are based on our knowledge of typical operating conditions for such applications, but are not intended to constitute and we specifically disclaim any warranty concerning suitability for a specific customer application or use. This Information is intended for use only by customers who have the requisite experience and capability to determine the correct products for their application. Any technical advice inferred from this Information or otherwise provided by us with reference to the use of our products is given gratis, and we assume no obligation or liability for the advice given or results obtained.
R / WOUND technology from pitch 10 to 27.5mm (Rated Voltage from 63 to 1000Vdc) PRODUCT CODE SYSTEM
Loose Taped Fig.1 Fig. 2 R60 Typical applications: blocking, coupling, decoupling, by-passing, interference suppression in low voltage applications (i.e.: AUTOMOTIVE). Ød ±0.05 PRODUCT CODE SYSTEM p =
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